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NPD4928

  Cat. No.:  DC70660  
Chemical Structure
956965-61-0
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More than 5000 active chemicals with high quality for research!
Field of application
NPD4928 (NPD 4928) is a small molecule that enhances ferroptosis via inhibition of ferroptosis suppressor protein 1 (FSP1).NPD4928 enhanced the sensitivity of various cancer cells to GPX4 inhibitor RSL3.
Cas No.: 956965-61-0
Chemical Name: NPD4928
Synonyms: NPD 4928
Formula: C29H32N2O6
M.Wt: 504.583
Sotrage: 2 years -20°C Powder, 2 weeks 4°C in DMSO, 6 months -80°C in DMSO
MSDS
COA
LOT NO. DOWNLOAD
2018-0101
Cat. No. Product name Field of application
DC74585 N6F11 N6F11 is a ferroptosis inducer, and can trigger the degradation of glutathione peroxidase 4 (GPX4) specifically in cancer cells. N6F11 can be used for ferroptosis study.
DC72304 MMRi62 MMRi62, a ferroptosis inducer targeting MDM2-MDM4 (negative regulators of tumor suppressor p53). MMRi62 shows a P53-independent pro-apoptotic activity against pancreatic ductal adenocarcinoma (PDAC) cells and induce autophagy. MMRi62 inducesferroptosis, resulting in a increase of reactive oxygen and lysosomal degradation of ferritin heavy chain (FTH1). MMRi62 also leads to proteasomal degradation of mutant p53, also inhibits orthotopic xenograft PDAC mouse model in vivo with high frequency mutation characteristics of KRAS and TP53.12.
DC49170 Erastin2 Erastin 2(Erastin-2)is a ferroptosis inducer and a potent, selective inhibitor of the system xc(-) cystine/glutamate transporter.
DC44907 SRS11-92 SRS11-92, a Ferrostatin-1 (Fer-1) analogue, is a potent ferroptosis inhibitor. SRS11-92 inhibits ferroptotic cell death induced by Erastin in HT-1080 human fibrosarcoma cells (EC50=6 nM).
DC39090 iFSP1 iFSP1 is a potent, selective and glutathione-independent inhibitor of ferroptosis suppressor protein 1 (FSP1/AIFM2) with EC50 of 103 nM. iFSP1 selectively induces ferroptosis in GPX4-knockout Pfa1 and HT1080 cells that overexpresses FSP1.
DC76153 UAMC-4821 UAMC-4821 is an inhibitor for ferroptosis with an IC50 of 5.2 nM. UAMC-4821 scavenges free radicals, blocks the lipid peroxidation, inhibits ML162. Emavusertib maleate is an orally active inhibitor for IRAK4 (IC50=57 nM) and FLT3. Emavusertib maleate inhibits NF-κB and MyD88 signaling pathways, reduces the generation of pro-inflammatory cytokines like IL-6 and IL-10, thereby exhibiting anti-inflammatory and anti-proliferative activities against cancer cells, leading to cell apoptosis. Emavusertib maleate exhibits antitumor activity in mouse model.
DC76152 Pro-GA Pro-GA is a γ-Glutamylcyclotransferase (GGCT) inhibitor and a cell-permeable diester-type pro-drug with anticancer activity, GGCT is a key enzyme in glutathione metabolism and is involved in the ferroptosis pathway. Pro-GA exhibits an IC50 of 57 μM against the bladder cancer cell line T24 and can be utilized in cancer research.
DC76151 NYY-6a NYY-6a is a Ferroptosis inhibitor. NYY-6a shows significant inhibitory activity against RSL3-induced ferroptosis across 786-O and HT-1080 cells with EC50s of 52 and 50 nM, respectively. NYY-6a functions as a radical trapping antioxidant (RTA) with efficacy of diminishing lipid peroxidation comparable to ferrostatin-1 and liproxtatin-1. NYY-6a is potential for ferroptosis related pathologies reasearch.
DC76150 Ferroptosis inducer-7 Ferroptosis inducer-7 is an orally active and selective ferroptosis inducer via inositol 1,4,5-trisphosphate receptor (IP3R)/calcium release-activated calcium channel protein (ORAI). Ferroptosis inducer-7 exhibits a notable effect in alleviating anemia symptoms, suppressing bone marrow CTLs activation, and improving hematopoietic function in immune-mediated bone marrow failure. Ferroptosis inducer-7 can be studied in research for aplastic anemia.
DC76149 Ferroptocide Ferroptocide is a cell death inducer that triggers ferroptosis and has anti-tumor activity. Ferroptocide can induce oxidative stress, leading to G2/M cell cycle arrest and apoptosis activation in LNCaP cells, while also effectively inhibiting the cell viability of both LNCaP and TRAMP-C1 cells. Ferroptocide can be used to study its capability to induce mitochondrial autophagy and to trigger immunogenic cell death (ICD) in prostate cancer cells.
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